Bednarz Arkadiusz, Misiolek Wojciech Z
Department of Aerospace Engineering, Rzeszow University of Technology, 35-959 Rzeszow, Poland.
Loewy Institute, Lehigh University, Bethlehem, PA 18015, USA.
Materials (Basel). 2020 Dec 15;13(24):5726. doi: 10.3390/ma13245726.
This publication presents an assessment of the influence of a surface treatment such as shot-peening on the fatigue life of a compressor blade exposed to resonant vibrations. As part of the work, a geometric model of the blade was developed, and a numerical modal and fatigue analysis were performed. The fatigue analysis was based on the Manson-Coffin-Basquin and Ramberg-Osgood models. Additionally, the location of the highest equivalent stresses was established. Based on the results of the strength analysis, two points were identified where a fatigue crack may potentially occur. As part of the work, the influence of different values of residual stresses on the results of the fatigue life was determined. The obtained results were compared to the literature values of fatigue life for this blade. A secondary objective of the study was to determine the size of the grains at various points of the blade, as well as the thickness of the layer plasticized as a result of peening. The relationship between the location of the highest values of the equivalent stresses and the thickness of the plasticized layer was determined. An explanation of the effect of shot-peening on the increase in the fatigue life of the blade was proposed.
本出版物介绍了喷丸等表面处理对承受共振的压缩机叶片疲劳寿命的影响评估。作为这项工作的一部分,建立了叶片的几何模型,并进行了数值模态和疲劳分析。疲劳分析基于曼森 - 科芬 - 巴斯昆和兰伯格 - 奥斯古德模型。此外,确定了等效应力最高的位置。基于强度分析结果,确定了两个可能出现疲劳裂纹的点。作为这项工作的一部分,确定了不同残余应力值对疲劳寿命结果的影响。将所得结果与该叶片疲劳寿命的文献值进行了比较。该研究的第二个目标是确定叶片各点处的晶粒尺寸,以及喷丸后塑化层的厚度。确定了等效应力最高值位置与塑化层厚度之间的关系。提出了喷丸处理对叶片疲劳寿命增加影响的解释。